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首页> 外文期刊>ACS nano >Substrate-Induced Variations of Molecular Packing, Dynamics, and Intermolecular Electronic Couplings in Pentacene Monolayers on the Amorphous Silica Dielectric
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Substrate-Induced Variations of Molecular Packing, Dynamics, and Intermolecular Electronic Couplings in Pentacene Monolayers on the Amorphous Silica Dielectric

机译:非晶硅介电体上并五苯单层中分子堆积,动力学和分子间电子偶联的基质诱导变化。

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摘要

Charge-carrier transport in thin-film organic fieldeffect transistors takes place within the first (few) molecular layer(s) of the active organic material in contact with the gate dielectric. Here, we use atomistic molecular dynamics simulations to evaluate how interactions with bare amorphous silica surfaces that vary in terms of surface potential influence the molecular packing and dynamics of a monolayer pentacene film. The results indicate that the long axis of the pentacene molecules has a non-negligible tilt angle away from the surface normal. Grazing-incidence X-ray diffraction patterns for these models are calculated, and we discuss notable differences in the shapes of the Bragg rods as a function of the molecular packing, also in relation to previously published experimental reports. Intermolecular electronic couplings (transfer integrals) evaluated for the monolayers show marked differences compared to bulk crystal calculations, a result that points to the importance of fully considering the molecular packing environment in charge-carrier mobility models for organic electronic materials.
机译:薄膜有机场效应晶体管中的载流子传输发生在与栅极电介质接触的活性有机材料的第一(几个)分子层内。在这里,我们使用原子分子动力学仿真来评估与裸露的无定形二氧化硅表面的相互作用(根据表面电势变化)如何影响单层并五苯薄膜的分子堆积和动力学。结果表明并五苯分子的长轴具有远离表面法线的不可忽略的倾斜角。计算了这些模型的掠入射X射线衍射图,我们还讨论了布拉格棒形状随分子堆积而变化的显着差异,也与先前发表的实验报告有关。与块状晶体计算相比,单层分子间电子耦合(转移积分)显示出显着差异,这一结果表明在有机电子材料的电荷-载流子迁移模型中充分考虑分子堆积环境的重要性。

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